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Search: WFRF:(Griffith DE)

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  • Aartsen, M. G., et al. (author)
  • Very high-energy gamma-ray follow-up program using neutrino triggers from IceCube
  • 2016
  • In: Journal of Instrumentation. - 1748-0221. ; 11
  • Journal article (peer-reviewed)abstract
    • We describe and report the status of a neutrino-triggered program in IceCube that generates real-time alerts for gamma-ray follow-up observations by atmospheric-Cherenkov telescopes (MAGIC and VERITAS). While IceCube is capable of monitoring the whole sky continuously, high-energy gamma-ray telescopes have restricted fields of view and in general are unlikely to be observing a potential neutrino-flaring source at the time such neutrinos are recorded. The use of neutrino-triggered alerts thus aims at increasing the availability of simultaneous multi-messenger data during potential neutrino flaring activity, which can increase the discovery potential and constrain the phenomenological interpretation of the high-energy emission of selected source classes (e. g. blazars). The requirements of a fast and stable online analysis of potential neutrino signals and its operation are presented, along with first results of the program operating between 14 March 2012 and 31 December 2015.
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  • Aartsen, M. G., et al. (author)
  • Multiwavelength follow-up of a rare IceCube neutrino multiplet
  • 2017
  • In: Astronomy and Astrophysics. - : EDP SCIENCES S A. - 0004-6361 .- 1432-0746. ; 607
  • Journal article (peer-reviewed)abstract
    • On February 17, 2016, the IceCube real-time neutrino search identified, for the first time, three muon neutrino candidates arriving within 100 s of one another, consistent with coming from the same point in the sky. Such a triplet is expected once every 13.7 years as a random coincidence of background events. However, considering the lifetime of the follow-up program the probability of detecting at least one triplet from atmospheric background is 32%. Follow-up observatories were notified in order to search for an electromagnetic counterpart. Observations were obtained by Swift's X-ray telescope, by ASAS-SN, LCO and MASTER at optical wavelengths, and by VERITAS in the very-high-energy gamma-ray regime. Moreover, the Swift BAT serendipitously observed the location 100 s after the first neutrino was detected, and data from the Fermi LAT and HAWC observatory were analyzed. We present details of the neutrino triplet and the follow-up observations. No likely electromagnetic counterpart was detected, and we discuss the implications of these constraints on candidate neutrino sources such as gamma-ray bursts, core-collapse supernovae and active galactic nucleus flares. This study illustrates the potential of and challenges for future follow-up campaigns.
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  • Adrian-Martinez, S., et al. (author)
  • The First Combined Search For Neutrino Point-Sources In The Southern Hemisphere With The Antares And Icecube Neutrino Telescopes
  • 2016
  • In: Astrophysical Journal. - 0004-637X .- 1538-4357. ; 823:1
  • Journal article (peer-reviewed)abstract
    • We present the results of searches for point-like sources of neutrinos based on the first combined analysis of data from both the ANTARES and IceCube neutrino telescopes. The combination of both detectors, which differ in size and location, forms a window in the southern sky where the sensitivity to point sources improves by up to a factor of 2 compared with individual analyses. Using data recorded by ANTARES from 2007 to 2012, and by IceCube from 2008 to 2011, we search for sources of neutrino emission both across the southern sky and from a preselected list of candidate objects. No significant excess over background has been found in these searches, and flux upper limits for the candidate sources are presented for E-2.5 and E-2 power-law spectra with different energy cut-offs.
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  • Aartsen, M. G., et al. (author)
  • Astrophysical neutrinos and cosmic rays observed by IceCube
  • 2018
  • In: Advances in Space Research. - : Elsevier BV. - 0273-1177 .- 1879-1948. ; 62:10, s. 2902-2930
  • Journal article (peer-reviewed)abstract
    • The core mission of the IceCube neutrino observatory is to study the origin and propagation of cosmic rays. IceCube, with its surface component IceTop, observes multiple signatures to accomplish this mission. Most important are the astrophysical neutrinos that are produced in interactions of cosmic rays, close to their sources and in interstellar space. IceCube is the first instrument that measures the properties of this astrophysical neutrino flux and constrains its origin. In addition, the spectrum, composition, and anisotropy of the local cosmic-ray flux are obtained from measurements of atmospheric muons and showers. Here we provide an overview of recent findings from the analysis of IceCube data, and their implications to our understanding of cosmic rays.
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  • Result 1-10 of 95
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journal article (88)
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Type of content
peer-reviewed (87)
other academic/artistic (8)
Author/Editor
Hoffmann, R. (48)
Gallagher, J. (47)
Bohm, Christian (46)
Kolanoski, H. (46)
Bai, X. (46)
Terliuk, A. (46)
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Kowalski, M. (46)
Song, M. (46)
Van Eijndhoven, N. (46)
Adams, J. (46)
Ahrens, M. (46)
Auffenberg, J. (46)
Baum, V. (46)
Bay, R. (46)
Tjus, J. Becker (46)
Hultqvist, Klas (46)
Berley, D. (46)
Bernardini, E. (46)
Bindig, D. (46)
Blaufuss, E. (46)
Braun, J. (46)
Cheung, E. (46)
Clark, K. (46)
Classen, L. (46)
De Clercq, C. (46)
de Wasseige, G. (46)
Diaz-Velez, J. C. (46)
Eberhardt, B. (46)
Ehrhardt, T. (46)
Fazely, A. R. (46)
Felde, J. (46)
Filimonov, K. (46)
Finley, Chad (46)
Gerhardt, L. (46)
Ghorbani, K. (46)
Goldschmidt, A. (46)
Grant, D. (46)
Walck, Christian (46)
Hebecker, D. (46)
Heereman, D. (46)
Helbing, K. (46)
Hellauer, R. (46)
Hignight, J. (46)
Hoffman, K. D. (46)
Hoshina, K. (46)
Huang, F. (46)
Huber, M. (46)
In, S. (46)
Ishihara, A. (46)
Kappes, A. (46)
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Swedish Museum of Natural History (3)
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English (94)
Mongolian (1)
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Natural sciences (68)
Medical and Health Sciences (11)
Engineering and Technology (5)
Social Sciences (4)
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